4.7 Article

Pre-magnetized Fe0 as heterogeneous electro-Fenton catalyst for the degradation of p-nitrophenol at neutral pH

期刊

CHEMOSPHERE
卷 240, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2019.124962

关键词

Electro-Fenton; Pre-magnatization; Zero-valent iron; Heterogeneous catalyst; p-Nltrophenol (PNP) degradation

资金

  1. National Natural Science Foundation of China [21773129, 21976096, 21811530274]
  2. National Key Research and Development Program [2016YFC0400706]
  3. China National Water Project [2017ZX07107002]
  4. Tianjin Science and Technology Program [19PTZWHZ00050, 18PTZWHZ00110]
  5. 111 program, Ministry of Education, China [T2017002]
  6. Fundamental Research Funds for the Central Universities, Nankai University
  7. Tianjin Development Program for Innovation and Entrepreneurship

向作者/读者索取更多资源

Pre-magnetized Fe-0 (Pre-Fe-0) was for the first time applied as heterogeneous catalyst to enhance the oxidation efficiency of electro-Fenton (EF) for the degradation of p-nitrophenol (PNP). The parameters including current, initial pH and pre-Fe-0 dosage of Pre-Fe-0/EF process were optimized and compared with other two processes (conventional Fe-0/EF and electro-oxidation) to confirm its advantage. The rate constants of PNP removal were 1.40-3.82 folds of those by Fe-0/EF process under various experimental conditions. The application of pre-Fe-0 as catalyst could extend the working pH range from 3.0 to neutral conditions for PNP removal and reduce the Fe-0 dosage from 2 to 0.5 mM corresponding to Fe-0/EF, avoiding the second pollution of iron sludge. The superiority of Pre-Fe-0/EF process was also verified to improve the degradation and mineralization of other phenols and antibiotics. Furthermore, a possible pathway of PNP degradation was revealed by the identification of intermediates and organic acids, and the possible mechanism of pre-Fe-0 efficiently enhanced the EF efficiency was proposed. This work demonstrated that such a novel heterogeneous EF process using pre-Fe-0 catalyst was clean and promising for the degradation of refractory organic pollutants. (C) 2019 Elsevier Ltd. All rights reserved.

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